Influence of stresses on deformation process under the irradiation creep and swelling

D. Breslavsky
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引用次数: 1

Abstract

Approaches for describing the deformation of structural elements made from the material, in which radiation creep and swelling strains develop simultaneously, are discussed. The technique for description of irradiation swelling strains, which is used for calculational analysis of stress-strain state arising in structural elements under the joint action of irradiation and thermal-stress fields, is regarded. A complete system of equations of the boundary –initial value problem is presented, in which elastic and thermal strains, strains of radiation creep and swelling are taken into account. Numerical modelling was carried out using the specialized software FEM Creep, in which the boundary value problem is solved by the Finite Element Method, and the initial one is integrated in time by the difference predictor-corrector method. Two forms are given for the equation of state describing the radiation swelling strains: first is for the components of the strain tensor as well as second is prepared for their rates. The hypothesis about the linear correspondence of the received radiation dose and the deformation time, during which radiation swelling strains develop, are analyzed. A number of questions that require answers when using equations with a complex stress state in which the radiation swelling strains are directly depend on stresses, are discussed. Based on the processing of experimental data on the swelling of tubes made of steel 316Ti in the temperature range of 450-460 °С, a form of the equation for the radiation swelling strain rate is proposed, and the constants included in it are determined. Using the example of numerical modelling of the deformation of tubes were made of steel 316Ti and loaded by inner pressure, the applicability of the classical approach for the analysis of the stress-strain state in the presence of radiation swelling strains is shown.
辐照下应力对变形过程的影响
讨论了在辐射蠕变和膨胀应变同时发生的情况下,描述由材料制成的结构元件变形的方法。研究了辐照膨胀应变的描述技术,该技术用于辐照和热应力场共同作用下结构构件应力-应变状态的计算分析。给出了考虑弹性应变和热应变、辐射蠕变应变和膨胀应变的边界初值问题的完整方程组。利用有限元软件FEM Creep进行数值模拟,采用有限元法求解边值问题,采用差分预测校正法对初始值进行时间积分。给出了描述辐射膨胀应变的状态方程的两种形式:第一种形式是应变张量的分量,第二种形式是它们的速率。分析了辐射膨胀应变产生的变形时间与接收辐射剂量线性对应的假设。讨论了在辐射膨胀应变直接依赖于应力的复杂应力状态方程中需要解决的一些问题。通过对316Ti钢管材在450 ~ 460°С温度范围内膨胀实验数据的处理,提出了辐射膨胀应变率方程的形式,并确定了其中包含的常数。通过对316Ti钢管内压加载变形的数值模拟,说明了经典方法在辐射膨胀应变作用下应力-应变状态分析中的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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